固态变压器级联h桥的主动热控制

Jianxiong Yu, Jiatong Zhang, R. Lu, R. Zhao, Chushan Li, Wuhua Li
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引用次数: 0

摘要

模块化固态变压器(SST)由于其在电源管理方面的可行性,近年来得到了广泛的应用。一般来说,SST在中压电网侧使用功率半导体来支撑电网电压,并使用中频变压器来取代笨重的线频变压器。因此,与传统的功率转换系统相比,具有竞争力的SST寿命是该领域的关键话题。功率半导体是SSTs的关键部件,热控制在寿命管理中起着重要作用。因此,本文提出了一种用于SSTs中级联h桥(CHB)的主动热控制策略,以提高整流级的使用寿命。仿真电路表明,采用该策略后,CHBs中功率半导体的热应力得到了有效平衡,最大结温降低了10.2%,从而延长了关键元件的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active Thermal Control for Cascaded H-Bridges in Solid State Transformers
Modular solid state transformer (SST) has prevailed in recent years, due to its feasibility for power management. Generally, an SST uses power semiconductors on medium voltage gird side to support the grid voltage, and it uses medium frequency transformers to replace the bulky line-frequency transformer. Therefore, a competitive lifespan of an SST compared with conventional power conversion system is a key topic in this area. Thermal control plays an important role in lifespan management of power semiconductors, which is the key components in SSTs. Thus, this paper proposes an active thermal control strategy for Cascaded H-Bridge (CHB) in SSTs to increase lifespan of the rectifier stage. Employed by the proposed strategy, simulated circuit shows that thermal stress on power semiconductors in CHBs is effectively balanced, and the maximum junction temperature can be reduced by 10.2%, which leads to a longer lifespan of key components.
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